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Effects of the initial water curing time on the corrosion behavior of steel bar corrosion in fly ash concrete

机译:初始水固化时间对粉煤灰混凝土中钢筋锈蚀行为的影响

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Concrete specimens made of 30% fly ash (FA) replacement ratio and ordinary Portland cement (OPC) were fabricated to study the effects of the initial water curing time on the corrosion behavior of the embedded steel bar. The specimens were cured in water tank for 5days, 7days, 14days and 28days respectively at a normal temperature of 20℃, then taken out and stored at an indoor natural environment. At the exposure time of 60days, 120days and 180days, steel bars' corrosion current densities icorr, corrosion potentials Ecorr in FA and OPC concrete specimens and their electrical resistivities ρc were tested. Results indicate that the initial wet curing time has important effects on steel bars' corrosion behaviors in both FA concrete and OPC concrete. With the increase of the initial wet curing time, steel bars' icorr all tend to decrease and Ecorr tend to increase. The longer the initial wet curing time, the higher the protective ability of FA concrete, compared to OPC concrete. Under the normal temperature, the shorter initial wet curing time of 5days and 7days for FA concrete showed worse protective ability than OPC concrete. However, when the initial wet curing time surpasses 14days, FA concrete behaves better than OPC concrete.
机译:制备了以30%的粉煤灰(FA)替代率和普通的硅酸盐水泥(OPC)制成的混凝土标本,以研究初始水固化时间对埋入式钢筋的腐蚀行为的影响。标本在水箱中于20℃的常温下分别固化5天,7天,14天和28天,然后取出并保存在室内自然环境中。在60天,120天和180天的暴露时间下,测试了FA和OPC混凝土样品中钢筋的腐蚀电流密度icorr,腐蚀电势Ecorr及其电阻率ρc。结果表明,初始湿固化时间对FA混凝土和OPC混凝土中的钢筋腐蚀行为都有重要影响。随着初始湿固化时间的增加,钢筋的icorr均趋于减小,而Ecorr趋于增大。与OPC混凝土相比,初始湿固化时间越长,FA混凝土的防护能力就越高。在常温下,FA混凝土的5天和7天较短的初始湿固化时间显示出比OPC混凝土差的保护能力。但是,当初始湿固化时间超过14天时,FA混凝土的性能优于OPC混凝土。

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